paper

Synthesis of Superconducting Phase of LaCeH at High Pressures

arXiv:2208.05199

Abstract

Clathrate hydride \emph{Fm}\={3}\emph{m}-LaH has been proven as the most extraordinary superconductor with the critical temperature above 250 K upon compression of hundreds of GPa in recent years. A general hope is to reduce the stabilization pressure and maintain the high value of the specific phase in LaH. However, strong structural instability distorts \emph{Fm}\={3}\emph{m} structure and leads to a rapid decrease of at low pressures. Here, we investigate the phase stability and superconducting behaviors of \emph{Fm}\={3}\emph{m}-LaH with enhanced chemical pre-compression through partly replacing La by Ce atoms from both experiments and calculations. For explicitly characterizing the synthesized hydride, we choose lanthanum-cerium alloy with stoichiometry composition of 1:1. X-ray diffraction and Raman scattering measurements reveal the stabilization of \emph{Fm}\={3}\emph{m}-LaCeH in the pressure range of 140-160 GPa. Superconductivity with of 1752 K at 155 GPa is confirmed with the observation of the zero-resistivity state and supported by the theoretical calculations. These findings provide applicability in the future explorations for a large variety of hydrogen-rich hydrides.

6 pages, 5 figures

Cited by in corpus (1)